Earth-abundant and low-cost catalysts with excellent electrocatalytic hydrogen evolution reaction (HER) activity in alkaline solution play an important role in the sustainable production of hydrogen energy. In this work, a catalyst of Ni(P, O)x·MoOx nanowire array on nickel foam has been prepared via a facile route for efficient alkaline HER. Benefiting from the collaborative advantages of Ni(P, O)x and amorphous MoOx, as well as three-dimensional porous conductive nickel scaffold, the hybrid electrocatalyst shows high catalytic activity in 1 M KOH aqueous solution, including a small overpotential of 59 mV at 10 mA cm−2, a low Tafel slope of 54 mV dec-1, and excellent cycling stability
Owing to the progressive abandoning of the fossil fuels and the increase of atmospheric CO2 concentr...
In recent years, the interest towards green hydrogen has drastically increased due to the global dec...
Owing to the progressive abandoning of the fossil fuels and the increase of atmospheric CO2 concentr...
The design of the cost-effective, efficient, and durable electrocatalysts for hydrogen evolution rea...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
Catalytic water splitting for commercial hydrogen production demands efficient and robust earth-abun...
Development of earth-abundant, efficient, and stable electrocatalysts for hydrogen evolution reactio...
The continuous consumption of fossil fuels and accompanying environmental problems are driving the e...
Hydrogen production by water electrolysis (WE) is a very promising technology because it is a pollut...
Searching for efficient and robust non-noble electrocatalysts for hydrogen generation is extremely d...
Hydrogen production by water electrolysis (WE) is a very promising technology because it is a pollut...
Exploring low-cost and highly efficient non-noble bifunctional electrocatalysts with high performanc...
Highly active catalysts from the earth-abundant metals are essential to materialize the low-cost pro...
Highly active catalysts from the earth-abundant metals are essential to materialize the low-cost pro...
Exploring low-cost and highly efficient non-noble bifunctional electrocatalysts with high performanc...
Owing to the progressive abandoning of the fossil fuels and the increase of atmospheric CO2 concentr...
In recent years, the interest towards green hydrogen has drastically increased due to the global dec...
Owing to the progressive abandoning of the fossil fuels and the increase of atmospheric CO2 concentr...
The design of the cost-effective, efficient, and durable electrocatalysts for hydrogen evolution rea...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
Catalytic water splitting for commercial hydrogen production demands efficient and robust earth-abun...
Development of earth-abundant, efficient, and stable electrocatalysts for hydrogen evolution reactio...
The continuous consumption of fossil fuels and accompanying environmental problems are driving the e...
Hydrogen production by water electrolysis (WE) is a very promising technology because it is a pollut...
Searching for efficient and robust non-noble electrocatalysts for hydrogen generation is extremely d...
Hydrogen production by water electrolysis (WE) is a very promising technology because it is a pollut...
Exploring low-cost and highly efficient non-noble bifunctional electrocatalysts with high performanc...
Highly active catalysts from the earth-abundant metals are essential to materialize the low-cost pro...
Highly active catalysts from the earth-abundant metals are essential to materialize the low-cost pro...
Exploring low-cost and highly efficient non-noble bifunctional electrocatalysts with high performanc...
Owing to the progressive abandoning of the fossil fuels and the increase of atmospheric CO2 concentr...
In recent years, the interest towards green hydrogen has drastically increased due to the global dec...
Owing to the progressive abandoning of the fossil fuels and the increase of atmospheric CO2 concentr...